Optics and Precision Engineering, Volume. 31, Issue 4, 459(2023)

Tracked motion flexible diffractive optical elements suppressing laser speckle and its durability test

Xiangrui DUAN1... Aoxin FEI1, Zhiyi LU2, Yulang PENG1 and Zichun LE1,* |Show fewer author(s)
Author Affiliations
  • 1College of Science, Zhejiang University of Technology, Hangzhou30023, China
  • 2Hangzhou PuYu Technology Development Co.,Ltd, Hangzhou31111, China
  • show less
    References(38)

    [1] H A CHEN, J W PAN, Z P YANG. Speckle reduction using deformable mirrors with diffusers in a laser pico-projector. Optics Express, 25, 18140-18151(2017).

    [2] C Y LIANG, W ZHANG, D W RUI et al. High-performance laser projection display illumination system based on a diffractive optical element. Applied Optics, 56, 2810-2815(2017).

    [3] A LAPCHUK, O PRYGUN, M L FU et al. Dispersion of speckle suppression efficiency for binary DOE structures: spectral domain and coherent matrix approaches. Optics Express, 25, 14575-14597(2017).

    [4] K AKŞIT, O ELDES, S VISWANATHAN et al. Portable 3D laser projector using mixed polarization technique. Journal of Display Technology, 8, 582-589(2012).

    [5] I GORCZYNSKA, J V MIGACZ, R J ZAWADZKI et al. Comparison of amplitude-decorrelation, speckle-variance and phase-variance OCT angiography methods for imaging the human retina and choroid. Biomedical Optics Express, 7, 911-942(2016).

    [6] J M SCHMITT, S H XIANG, K M YUNG. Speckle in optical coherence tomography. Journal of Biomedical Optics, 4, 95-105(1999).

    [7] Y LYSOV, V BARSKY, D URASOV et al. Microarray analyzer based on wide field fluorescent microscopy with laser illumination and a device for speckle suppression. Biomedical Optics Express, 8, 4798-4810(2017).

    [8] D MISHRA, S CHAUDHURY, M SARKAR et al. Edge probability and pixel relativity-based speckle reducing anisotropic diffusion. IEEE Transactions on Image Processing, 27, 649-664(2018).

    [9] E P MACKERROW, M J SCHMITT, D C THOMPSON. Effect of speckle on lidar pulse-pair ratio statistics. Applied Optics, 36, 8650-8669(1997).

    [10] A W STARK, E WONG, D WEIGEL et al. Subjective speckle suppression in laser-based stereo photogrammetry. Optical Engineering, 55, 121713(2016).

    [11] W GOODMANJ. Speckle Phenomena in Optics: Theory and Applications(2007).

    [12] Z M TONG, M N AKRAM, X Y CHEN. Speckle reduction using orthogonal arrays in laser projectors. Applied Optics, 49, 6425-6429(2010).

    [13] P F ZHAO, W H GAO. Illumination angle three-dimensional model for speckle noise suppression in laser projector. Journal of Display Technology, 12, 442-446(2016).

    [14] W H GAO, Z M TONG, V KARTASHOV et al. Replacing two-dimensional binary phase matrix by a pair of one-dimensional dynamic phase matrices for laser speckle reduction. Journal of Display Technology, 8, 291-295(2012).

    [15] C Y LIANG, W ZHANG, Z H WU et al. Beam shaping and speckle reduction in laser projection display systems using a vibrating diffractive optical element. Current Optics and Photonics, 1, 23-28(2017).

    [16] M J SUN, Z K LU. Speckle suppression with a rotating light pipe. Optical Engineering, 49(2010).

    [17] W F HSU, M H WENG. Compact holographic projection display using liquid-crystal-on-silicon spatial light modulator. Materials (Basel, Switzerland), 9, 768(2016).

    [18] Y S CHANG, W F HSU, K H HSU et al. Full-frame projection displays using a liquid-crystal-on-silicon spatial light modulator for beam shaping and speckle suppression. Applied Optics, 53, G214-G221(2014).

    [19] ZHAOMIN, TONG, ZHAOMIN, TONG. Principle, design and fabrication of a passive binary micro-mirror array (BMMA) for speckle reduction in grating light valve (GLV) based laser projection displays. Sensors and Actuators A: Physical, 210, 209-216(2014).

    [20] ZHAOMIN, TONG, ZHAOMIN, TONG. A ferroelectric liquid crystal spatial light modulator encoded with orthogonal arrays and its optimized design for laser speckle reduction. Optics and Lasers in Engineering, 90, 173-178(2017).

    [21] F PAN, L Z YANG, W XIAO. Coherent noise reduction in digital holographic microscopy by averaging multiple holograms recorded with a multimode laser. Optics Express, 25, 21815-21825(2017).

    [22] A LAPCHUK, G PASHKEVICH, O PRYGUN et al. Very efficient speckle suppression in the entire visible range by one two-sided diffractive optical element. Applied Optics, 56, 1481-1488(2017).

    [23] A LAPCHUK, I GORBOV, Z C LE et al. Experimental demonstration of a flexible DOE loop with wideband speckle suppression for laser pico-projectors. Optics Express, 26, 26188-26195(2018).

    [24] L L WANG, T TSCHUDI, T HALLDÓRSSON et al. Speckle reduction in laser projection systems by diffractive optical elements. Applied Optics, 37, 1770-1775(1998).

    [25] T K T TRAN, S SUBRAMANIAM, C P LE et al. Design, modeling, and characterization of a microelectromechanical diffuser device for laser speckle reduction. Journal of Microelectromechanical Systems, 23, 117-127(2014).

    [26] T K T TRAN, X Y CHEN et al. Speckle reduction in laser projection using a dynamic deformable mirror. Optics Express, 22, 11152-11166(2014).

    [27] A. LAPCHUK. Impact of aberrations on speckle suppression efficiency on moving a DOE inside the optical system. Displays, 43, 1-8(2016).

    [28] A LAPCHUK, G A PASHKEVICH, O V PRYGUN et al. Experiment evaluation of speckle suppression efficiency of 2D quasi-spiral M-sequence-based diffractive optical element. Applied Optics, 54, E47-E54(2015).

    [29] A LAPCHUK, V YURLOV, A KRYUCHYN et al. Impact of speed, direction, and accuracy of diffractive optical element shift on efficiency of speckle suppression. Applied Optics, 54, 4070-4076(2015).

    [30] A LAPCHUK, A KRYUCHYN, V PETROV et al. Optimal speckle suppression in laser projectors using a single two-dimensional Barker code diffractive optical element. Journal of the Optical Society of America A, 30, 227-232(2013).

    [31] W THOMAS, C MIDDLEBROOK. Non-moving Hadamard matrix diffusers for speckle reduction in laser pico-projectors. Journal of Modern Optics, 61, S74-S80(2014).

    [32] B REDDING, M A CHOMA, H CAO. Speckle-free laser imaging using random laser illumination. Nature Photonics, 6, 355-359(2012).

    [33] K V CHELLAPPAN, E ERDEN, H UREY. Laser-based displays: a review. Applied Optics, 49, F79-F98(2010).

    [34] J I TRISNADI. Hadamard speckle contrast reduction. Optics Letters, 29, 11-13(2004).

    [35] S AN, A LAPCHUK, V YURLOV et al. Speckle suppression in laser display using several partially coherent beams. Optics Express, 17, 92-103(2009).

    [36] H ISHIKAWA, A SHIBASE, W WENG et al. Reduction of laser speckle noise by using particle-dispersed liquid crystals. Molecular Crystals and Liquid Crystals, 646, 93-98(2017).

    [37] G VERSCHAFFELT, S ROELANDT, Y MEURET et al. Speckle disturbance limit in laser-based cinema projection systems. Scientific Reports, 5, 14105(2015).

    [38] Y H REN, J H SI, W J TAN et al. Speckle suppression of OKG imaging in highly turbid medium using SC-assisted fundamental frequency. IEEE Photonics Technology Letters, 29, 106-109(2017).

    Tools

    Get Citation

    Copy Citation Text

    Xiangrui DUAN, Aoxin FEI, Zhiyi LU, Yulang PENG, Zichun LE. Tracked motion flexible diffractive optical elements suppressing laser speckle and its durability test[J]. Optics and Precision Engineering, 2023, 31(4): 459

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Modern Applied Optics

    Received: Aug. 17, 2022

    Accepted: --

    Published Online: Mar. 7, 2023

    The Author Email: LE Zichun (lzc@zjut.edu.cn)

    DOI:10.37188/OPE.20233104.0459

    Topics